Gleich G J, Loegering D A, Kueppers F, Bajaj S P, Mann K G
J Exp Med. 1974 Aug 1;140(2):313-32. doi: 10.1084/jem.140.2.313.
Guinea pig eosinophil granules are characterized by the presence of a basic protein of low molecular weight which accounts for greater than 50% of granule protein. This protein, termed the major basic protein (MBP), readily aggregates and becomes insoluble, and the formation of aggregates is dependent on the establishment of disulfide bonds. Analysis of concentrated preparations of MBP often revealed a series of bands which were multiples of a monomeric unit with a mol wt of approximately 11,000. Analysis of reduced and alkylated MBP on a 10% agarose column equilibrated with 6 M guanidinium chloride revealed a single polypeptide chain with a mol wt of 10,800. Amino acid analysis of the protein revealed the presence of 13% arginine, consistent with the basic character of the molecule. Four residues of tryptophan, were present, indicating that MBP is not a histone. The MBP did not increase vascular permeability when injected into the skin of guinea pigs, nor did it antagonize the effect of histamine and bradykinin in the skin. MBP also did not contract the isolated guinea pig ileum and when mixed with histamine or bradykinin did not inhibit their activity on the gut. MBP had only weak, if any, antihistaminic activity. MBP possessed weak bactericidal activity when compared to histone and then only with one strain of E. coli. MBP precipitated DNA, neutralized heparin, and activated papain. On a molar basis MBP was more active than cysteine in activating papain. These results do not point to any unique biological activity associated with MBP other than those expected of a protein as basic as it is and one which possesses reactive sulfhydryl groups. Possible functions of eosinophils based on the properties of the MBP are discussed.
豚鼠嗜酸性粒细胞颗粒的特征是存在一种低分子量的碱性蛋白,该蛋白占颗粒蛋白的比例超过50%。这种蛋白被称为主要碱性蛋白(MBP),它很容易聚集并变得不溶,聚集的形成依赖于二硫键的建立。对浓缩的MBP制剂进行分析时,常常会发现一系列条带,这些条带是一个分子量约为11,000的单体单元的倍数。在以6 M盐酸胍平衡的10%琼脂糖柱上对还原和烷基化的MBP进行分析,结果显示有一条分子量为10,800的单多肽链。对该蛋白进行氨基酸分析发现含有13%的精氨酸,这与该分子的碱性特征相符。该蛋白含有四个色氨酸残基,表明MBP不是组蛋白。将MBP注射到豚鼠皮肤中时,它不会增加血管通透性,也不会拮抗组胺和缓激肽在皮肤中的作用。MBP也不会使分离的豚鼠回肠收缩,并且与组胺或缓激肽混合时不会抑制它们对肠道的活性。MBP只有微弱的(如果有的话)抗组胺活性。与组蛋白相比,MBP只有微弱的杀菌活性,而且只对一种大肠杆菌菌株有杀菌活性。MBP能沉淀DNA、中和肝素并激活木瓜蛋白酶。在摩尔基础上,MBP在激活木瓜蛋白酶方面比半胱氨酸更具活性。这些结果并未表明与MBP相关的任何独特生物活性,除了作为一种碱性且具有反应性巯基的蛋白质所预期的那些活性。基于MBP的特性,讨论了嗜酸性粒细胞可能的功能。